![]() sodium molybdate dihydrate structure
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Common Name | sodium molybdate dihydrate | ||
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CAS Number | 10102-40-6 | Molecular Weight | 241.948 | |
Density | 2.37 g/mL at 25 °C | Boiling Point | N/A | |
Molecular Formula | H4MoNa2O6 | Melting Point | 100 °C (dec.)(lit.) | |
MSDS | Chinese USA | Flash Point | N/A |
Arsenic speciation in natural and contaminated waters using CZE with in situ derivatization by molybdate and direct UV-detection.
Electrophoresis 30(6) , 1088-93, (2009) A simple and sensitive procedure for simultaneous determination of arsenate, arsenite, monomethylarsonate and dimethylarsinate (DMA) ions in waters using CZE with chemical derivatization in situ and UV-detection at 250 nm was developed. The separation was per... |
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Mussel-inspired bolaamphiphile sticky self-assemblies for the preparation of magnetic nanoparticles.
Colloids Surf. B Biointerfaces 127 , 89-95, (2015) Adopting the strong metal binding moiety of a mussel protein, a novel bolaamphiphile molecule was prepared and applied to the fabrication of magnetic core-shell nanoparticles. The novel bolaamphiphile molecule with 3,4-dihydroxyphenylalanine (DOPA) end groups... |
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[Potentiometric glucose determination in human serum samples with glucose oxidase biosensor based on iodide electrode].
Prikl. Biokhim. Mikrobiol. 49(2) , 209-14, (2013) Glucose potentiometric biosensor was prepared by immobilizing glucose oxidase on iodide-selective electrode. The hydrogen peroxide formed after the oxidation of glucose catalysed by glucose oxidase (GOD) was oxidized by sodium molybdate (SMo) at iodide electr... |
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Spectrophotometric determination of folic acid in pharmaceutical preparations by coupling reactions with iminodibenzyl or 3-aminophenol or sodium molybdate-pyrocatechol.
Anal. Biochem. 307(2) , 316-21, (2002) Novel coupling reagents are used for the simple and sensitive spectrophotometric determination of folic acid either in pure form or in its pharmaceutical preparations. The methods are based on the probable diazotization of the p-aminobenzoylglutamic acid obta... |
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The chronic toxicity of molybdate to marine organisms. I. Generating reliable effects data.
Sci. Total Environ. 430 , 260-9, (2012) A scientific research program was initiated by the International Molybdenum Association (IMOA) which addressed identified gaps in the environmental toxicity data for the molybdate ion (MoO(4)(2-)). These gaps were previously identified during the preparation ... |
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Continuous process for singlet oxygenation of hydrophobic substrates in microemulsion using a pervaporation membrane.
J. Colloid. Interface Sci. 282(2) , 478-85, (2005) Chemically generated singlet oxygen (1O2, 1Deltag) is able to oxidize a great deal of hydrophobic substrates from molybdate-catalyzed hydrogen peroxide decomposition, provided a suitable reaction medium such as a microemulsion system is used. However, high su... |
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Sodium molybdate improves the phagocytic function in alloxan-induced diabetic rats.
Chem. Biol. Interact. 145(2) , 159-63, (2003) Diabetes mellitus is a disease, which virtually affects all the systems in the body including the immune system. Bacterial infections are important causes of increased morbidity and mortality in diabetic patients. In the present study, we assessed the effect ... |
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Giardia lamblia: Characterization of ecto-phosphatase activities.
Exp. Parasitol. 121(1) , 15-21, (2009) Ecto-phosphatase activities of Giardia lamblia were characterized in intact cells, which are able to hydrolyze the artificial substrate p-nitrophenylphosphate (p-NPP) to p-nitrophenol (p-NP) at a rate of 8.4+/-0.8 nmol p-NP/h/10(7) cells. The ecto-phosphatase... |
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A simple and rapid technique for recovery of 99mTc from low specific activity (n,gamma)99Mo based on solid-liquid extraction and column chromatography methodologies.
Nucl. Med. Biol. 37(1) , 17-20, (2010) A simple and inexpensive method has been developed for the separation of (99m)Tc from (99)Mo produced from the neutron activation of (98)Mo by (98)Mo(n,gamma)(99)Mo nuclear reaction. The recovery of (99m)Tc was performed by solid-liquid extraction based on al... |
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Effects of sulphate addition and sulphide inhibition on microbial fuel cells.
Enzyme Microb. Technol. 52(1) , 32-7, (2013) The effects of adding sulphate in: (i) standard activated sludge microbial fuel cells (MFCs) and (ii) larger-scale leachate-treating columns - both as individual units and as a system connected in cascade - are reported. S-replete power output was ∼2-fold hig... |